Micron-thick spectroscopic cells for studying the Paschen-Back regime on the hyperfine structure of cesium atoms
Micron-thick spectroscopic cells for studying the Paschen-Back regime on the hyperfine structure of cesium atoms
复制标题
用于研究铯原子超精细结构的帕邢-巴克体系的微米厚光谱池
DOI:
10.1134/s1063776115040159
复制
发表时间:
2015
影响因子:
1.1
通讯作者:
D. Sarkisyan
中科院分区:
文献类型:
--
作者:
A. Sargsyan;B. Glushko;D. Sarkisyan
It is shown that the use of spectroscopic cells of micron thickness (L = 10–50 μm) allows one to effectively study the behavior of individual levels of the Cs D2 line in strong magnetic fields up to 9 kG. In particular, the absorption spectrum of Cs excited by circularly polarized light in fields above 8 kG consists of two fully separated groups, each containing eight atomic transitions. The intensities of atomic transitions and their frequency slopes (vs. magnetic field) in each group are almost the same. The physical explanation for the observed features is given; in particular, it is shown that one of the 54 possible atomic transitions in moderate magnetic fields (denoted Fg = 4, mF = 4 → Fe = 5, mF = 5) has unique characteristics that make it possible to predict the intensities and frequency slopes of seven atomic transitions in the same group. Practical applications of devices based on micrometric-thin cells in strong magnetic fields are considered.